English

The three-parameter correlations about optical plateaus of gamma-ray bursts

High Energy Astrophysical Phenomena 2018-08-15 v1

Abstract

Well-sampled optical light curves of 50 gamma-ray bursts (GRBs) with plateau features are compiled from the literature. By empirical fitting, we obtained the parameters of the optical plateaus, such as the decay slopes (α1\alpha_{\rm 1} and α2\alpha_{\rm 2}), the break times (TbT_{\rm b}), and the corresponding optical fluxes (FbF_{\rm b}) at the break times. The break time of optical plateaus ranges from tens of seconds to 10610^6 seconds, with a typical value about 10410^4 seconds. We have calculated the break luminosity, and it mainly ranges from 104410^{44} erg s1s^{-1} to 104710^{47} erg s1s^{-1}, which is generally two or three orders of magnitude less than the corresponding break luminosity of the X-ray afterglow plateaus. We reanalyzed the optical plateaus and also found that a significantly tighter correlation exists when we added the isotropic equivalent energy of GRBs Eγ,isoE_{\rm \gamma,iso} into the Lb,zTb,zL_{\rm b,z}-T_{\rm b,z} relation. The best fit correlation is obtained to be Lb,zTb,z0.9Eγ,iso0.4L_{\rm b,z}\propto T_{\rm b,z}^{-0.9}E_{\rm \gamma,iso}^{0.4}. We next explored the possible correlations among Lb,zL_{\rm b,z}, Tb,zT_{\rm b,z} and Ep,iE_{\rm p,i}, and found there is also a tight correlation between them, which takes the form of Lb,zTb,z0.9Ep,i0.5L_{\rm b,z}\propto T_{\rm b,z}^{-0.9}E_{\rm p,i}^{0.5}. We argue that these two tight Lb,zTb,zEγ,isoL_{\rm b,z}-T_{\rm b,z}-E_{\rm \gamma,iso} and Lb,zTb,zEp,iL_{\rm b,z}-T_{\rm b,z}-E_{\rm p,i} correlations are more physical, and it may be directly related to radiation physics of GRBs. The tight correlations are possible to be used as standard candles.

Keywords

Cite

@article{arxiv.1807.00241,
  title  = {The three-parameter correlations about optical plateaus of gamma-ray bursts},
  author = {Shu-Kun Si and Yan-Qing Qi and Feng-Xia Xue and Ya-Jie Liu and Xiao Wu and Shuang-Xi Yi and Qing-Wen Tang and Yuan-Chuan Zou and Fei-Fei Wang and Xiang-Gao Wang},
  journal= {arXiv preprint arXiv:1807.00241},
  year   = {2018}
}

Comments

Accepted for publication in The Astrophysical Journal; 26 pages, 8 figures, 3 tables